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首页> 外文期刊>Applied Petrochemical Research >Comparative investigation on radical polymerization of methyl and ethyl methacrylate under multi-site phase-transfer catalytic conditions
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Comparative investigation on radical polymerization of methyl and ethyl methacrylate under multi-site phase-transfer catalytic conditions

机译:多位点转催化条件下甲基和甲基丙烯酸甲基丙烯酸甲酯自由基聚合的比较研究

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摘要

Abstract Methyl and ethyl methacrylate was polymerized in heterogeneous system with the help of newly synthesized multi-site phase-transfer catalyst and using water-soluble initiator at 60?±?1?°C under unstirred inert atmospheric condition. Polymer yield was increased with increasing molar concentrations of monomer, initiator, catalyst and temperature. Polymerization follows first-order kinetics with respect to monomer and half-order with respect to catalyst and initiator, respectively. PTC has myriads of applications in the synthesis of various organic and polymeric materials because of its fast reaction and high yield in short period of time. Without addition of PTC, polymerization did not occur; this indicates that catalyst plays the pivotal role on initiation of polymerization. It extracts the reactive radical anion from aqueous phase and transfers to the organic phase where acrylates were polymerized. Polymerization reactivity of methyl and ethyl methacrylate under PTC conditions was studied by various parameters. The activation energy (Ea) and other thermodynamic parameters were calculated. The Ea value supports the reactivity of acrylates. The results obtained from this investigation were used for inferring the radical mechanism of phase-transfer-catalyzed polymerization. The obtained polymers were analyzed by spectral and thermal analyses.
机译:摘要在新合成的多部位相转移催化剂的帮助下,在非均相系统中,在非均相的多位点转催化剂的帮助下,在非惰性惰性大气条件下使用水溶性引发剂,在异构体系中聚合,在异构体系中聚合。随着单体,引发剂,催化剂和温度的摩尔浓度增加,增加了聚合物产率。相对于催化剂和引发剂分别相对于单体和半级,聚合遵循一阶动力学。 PTC具有在短时间内的快速反应和高产作用的各种有机和聚合物材料的合成中的血清应用。没有添加PTC,没有发生聚合;这表明催化剂在聚合的开始时起着枢转作用。它从水相中从水相中提取反应性自由基阴离子,并转移到聚合丙烯酸酯的有机相中。通过各种参数研究了PTC条件下甲基和甲基丙烯酸乙酯的聚合反应性。计算激活能量(EA)和其他热力学参数。 EA值支持丙烯酸酯的反应性。从该研究获得的结果用于推断相转移催化聚合的自由基机制。通过光谱和热分析分析所得聚合物。

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